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The cytosolic splicing variant of NELL2 inhibits PKCβ1 in glial cells
Da Yong Lee
, Eunju Kim
, Young Sun Lee
, Hwani Ryu
,
Jae Yong Park
*
, Eun Mi Hwang
*
Corresponding author for this work
Research output
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Contribution to journal
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Article
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peer-review
6
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Dive into the research topics of 'The cytosolic splicing variant of NELL2 inhibits PKCβ1 in glial cells'. Together they form a unique fingerprint.
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Immunology and Microbiology
Amino Terminal Sequence
100%
Astrocyte
100%
Cell Function
100%
Glia
100%
Glycoprotein
100%
Isotype
100%
Microglia
100%
Nervous Tissue
100%
Signal Transduction
100%
Neuroscience
Amino Terminal Sequence
50%
Astrocyte
50%
Cell Function
50%
Cell Signaling
50%
Glia
50%
Glycoprotein
50%
Microglia
100%
Nerve Tissue
50%
Protein Interacting with Protein Kinase C
50%
Protein Kinase C
100%
Medicine and Dentistry
Amino Terminal Sequence
50%
Astrocyte
50%
Cell Function
50%
Glia
50%
Glycoprotein
50%
Microglia
100%
Nerve Tissue
50%
Protein Interacting with Protein Kinase C
50%
Protein Kinase C
100%
Signal Transduction
50%
Keyphrases
Astrocytes
9%
Cell Behavior
9%
Direct Binding
9%
Downstream Signaling
9%
EGF-like
9%
Endogenous Inhibitor
9%
Expression Pattern
9%
Glia
9%
Glial Cells
100%
Glycoprotein
9%
Inhibitory Effect
9%
NELL2
100%
Neural Tissue
9%
Neuron-specific
9%
Physiological Function
9%
Pkc1
100%
Protein Kinase
27%
Pseudosubstrate
9%
Signaling Pathway
9%
Splice Variant
100%
Variant Forms
9%
Biochemistry, Genetics and Molecular Biology
Astrocyte
33%
Cell Function
33%
EGF-like Domain
33%
Glial Cells
100%
Glycoprotein
33%
Microglia
100%
N-Terminus
33%
Protein Kinase C
100%
Signal Transduction
33%
Pharmacology, Toxicology and Pharmaceutical Science
Glycoprotein
50%
Protein Interacting with Protein Kinase C
50%
Protein Kinase C
100%